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In situ immuno-magnetic concentration-based biosensor systems for the rapid detection of Listeria monocytogenes

机译:基于原位免疫磁浓度的生物传感器系统,用于单核细胞增生性李斯特菌的快速检测

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A plastic module for in situ immuno-magnetic concentration (IMC) was devised by engraving acrylics and physically combining the system with a rapid test device to detect foodborne pathogen. The IMC moduleinstalled analytical system consisted of three compartments for magnetic separation, sample medium absorption, and analysis of the target microorganism. To experimentally simulate a practical situation, immuno-magnetic beads were prepared by coupling monoclonal antibodies specific to Listeria monocytogenes, which was used as a model analyte, to chemically functionalized beads. Under the optimal conditions, the IMC module condensed the medium by a factor of 100 (e.g., from 10 mL to 100 μL) within 5 min and enriched the microorganism by about 60-fold. This concentrated sample was then analyzed using two different analytical systems based on lateral flow, i.e., ELISA-on-a-chip and immuno-chromatographic assay, which had high detection capabilities, 3.6×10~2 and 6.6×10~3 cells mL(-1), respectively. Thus, the IMC module-installed biosensor system was able to sequentially condense a large sample volume and detect the presence of contaminants within, for example, 30 min. Therefore, this approach could be suitable for early screening of food products that may be contaminated with microorganisms.
机译:通过雕刻丙烯酸树脂,并将该系统与快速测试设备进行物理组合,设计出用于原位免疫磁浓缩(IMC)的塑料模块,以检测食源性病原体。 IMC模块安装的分析系统由三个隔室组成,用于磁分离,样品培养基吸收和目标微生物分析。为了实验地模拟实际情况,通过将对单核细胞增生李斯特氏菌具有特异性的单克隆抗体(用作模型分析物)与化学功能化的磁珠偶联来制备免疫磁珠。在最佳条件下,IMC模块在5分钟内将培养基浓缩100倍(例如10 mL至100μL),并使微生物富集约60倍。然后使用基于侧流的两种不同分析系统对浓缩的样品进行分析,即片上ELISA和免疫色谱分析,该系统具有较高的检测能力,分别为3.6×10〜2和6.6×10〜3个细胞mL (-1)。因此,安装了IMC模块的生物传感器系统能够依次凝结大量样品并在30分钟内检测到污染物的存在。因此,这种方法可能适用于早期筛选可能被微生物污染的食品。

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